挖掘臂铰点优化及液压缸参数设计

Zhongliang Yang, Zhen Lu, Zengjie Yang
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引用次数: 0

摘要

由于机械臂工作条件复杂,其结构设计难度很大。本文采用结构与液压系统相结合的方法,对挖掘臂进行了超前设计。首先利用动力学分析软件MotionView和参数化优化软件HyperStudy建立机械臂的动力学仿真模型,对液压缸各铰点位置进行优化,找出最合适的液压缸最大和最小安装距离;利用动力学模块MotioView计算机械臂在典型姿态下的受力,确定液压缸的缸径和杆径。同时对液压缸的各项参数进行了机械校核。然后,根据得到的液压缸参数计算液压缸在典型工况下的压缩刚度和拉伸刚度,从而校核工作臂的整体刚度。最后对工作臂结构进行了细化,并对典型工况下的结构强度进行了分析,使其满足设计要求。本文所描述的液压缸铰点的优化、液压缸参数的设计方法和工作臂的刚度校核方法可以推广到其他类似的结构设计中,具有一定的参考意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hinge point optimization and hydraulic cylinder parameter design of the digging arm
Because of the complex working conditions of the arm, its structural design is very difficult. In this paper, the digging arm is integrated by structure and hydraulic systems, and it is designed forward. First a dynamics simulation model of the arm should be established by using dynamics analysis software MotionView and HyperStudy which is a parametric optimization software, the position of each hinge point of the hydraulic cylinder is optimized to find the maximum and minimum installation distances of the hydraulic cylinder which are the most suitable. The dynamic module MotioView is used to calculate the force of the arm under typical postures for determining the cylinder diameter and rod diameter of the hydraulic cylinder. At the same time, all parameters of the hydraulic cylinders are checked mechanically. After that, the compression and tensile stiffnesses of the hydraulic cylinder under typical working conditions are calculated according to the obtained hydraulic cylinder parameters so as to check the overall stiffness of the working arm. Finally, the working arm structure is refined and the structural strength under typical working conditions is analyzed to meet the design requirements. The optimization of the hinge point of the hydraulic cylinder, the design method of the hydraulic cylinder parameters and the stiffness checking method of the working arm described in this paper can be extended to other similar structural designs and have a certain reference significance.
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